Thickness Evaluation for Steel Sheets Using Saturation Magnetization (original) (raw)

Effect of metallurgical factors on the bulk magnetic properties of non-oriented electrical steels

Shekhar Wakade

Journal of Magnetism and Magnetic Materials, 2014

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Magnetic Properties and Structure of Non-Oriented Electrical Steel Sheets after Different Shape Processing

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Acta Physica Polonica A, 2017

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Luciano Albini

2019

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Comparison of Uniaxial and Rotational Magnetostriction of Non-oriented and Grain-oriented Electrical Steel

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red.pe.org.pl

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Correlation between the Magnetic Properties and the Crystallographic Texture during the Processing of Non Oriented Electrical Steel

Kim Verbeken

Solid State Phenomena, 2010

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Quantification of magnetic flux density in non-oriented electrical steel sheets by analysis of texture components

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Journal of Magnetism and Magnetic Materials, 2011

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Modelling the angular dependence of magnetic properties of a fully processed non-oriented electrical steel

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2003

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Local Magnetic Properties in Non-oriented Electrical Steel and Their Dependence on Magnetic Easy Axis and Misorientation Parameters

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Metallurgical and Materials Transactions A, 2015

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Mark Bala

JOM, 1986

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The angular dependence of magnetic properties of electrical steels

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2002

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CrAlN coating to enhance the power loss and magnetostriction in grain oriented electrical steel

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The Influence of Cutting Technology on Magnetic Properties of Non-Oriented Electrical Steel—Review State of the Art

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Magnetostriction in non-oriented electrical steels

André Gündel

Physica B-condensed Matter, 2006

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Analysis of magnetic fields on the surface of grain oriented electrical steel

Nkwachukwu Chukwuchekwa

2011

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Magnetic aging anisotropy of a semi-processed non-oriented electrical steel

Vicente Buono

Materials Science and Engineering: A, 2005

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Investigation of the influence of different cutting procedures on the global and local magnetic properties of non-oriented electrical steel

Benjamin Riedmüller

Journal of Magnetism and Magnetic Materials, 2015

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Iron loss in non-oriented electrical steels under distorted flux conditions

Maz Shirkoohi

IEEE Transactions on Magnetics, 1987

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Effect of texture and grain size on magnetic flux density and core loss in non-oriented electrical steel containing 3.15% Si

O. Engler

2014

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Application of an advanced eddy-current loss modelling to magnetic properties of electrical steel laminations in a wide range of measurements

Hamed Hamzehbahmani

IET Science, Measurement & Technology, 2015

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Through-process characterization of local anisotropy of Non-oriented electrical steel using magnetic Barkhausen noise

Mehdi Mehdi

Journal of Magnetism and Magnetic Materials, 2018

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Non-oriented electrical steel with core losses comparable to grain-oriented electrical steel

Mehdi Mehdi

Journal of Magnetism and Magnetic Materials, 2019

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Comparisons of Ac Magnetostriction of Non-Oriented Elec-Trical Steels Measured in Epstein and Disc Samples

Sakda Somkun

iris.elf.stuba.sk

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Evaluation of Local Anisotropy of Magnetic Response From Non-Oriented Electrical Steel by Magnetic Barkhausen Noise

Mehdi Mehdi

IEEE Transactions on Magnetics, 2018

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Development of the apparatus for measuring magnetic properties of electrical steel sheets in arbitrary directions under compressive stress normal to their surface

Dr.Kyyoul YUN

AIP Advances, 2017

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A method to estimate magnetic induction from texture in non-oriented electrical steels

Marcos de Campos

Journal of Magnetism and Magnetic Materials, 2001

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Effects of the application of a non-conventional treatment in magnetic field on a steel for industrial gearings

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IOP Conference Series: Materials Science and Engineering, 2019

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The Effect of Cross Rolling on Texture and Magnetic Properties of Non Oriented Electrical Steels

E. Aernoudt

1991

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A Description for the Anisotropy of Magnetic Properties of Grain-Oriented Steels

Marcos de Campos

IEEE Transactions on Magnetics, 2015

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Identification of magnetic properties for cutting edge of electrical steel sheets

Timo Holopainen

2016 XXII International Conference on Electrical Machines (ICEM), 2016

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